COMP SCI 1101 - Introduction to Programming
North Terrace Campus - Semester 1 - 2016
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General Course Information
Course Details
Course Code COMP SCI 1101 Course Introduction to Programming Coordinating Unit Computer Science Term Semester 1 Level Undergraduate Location/s North Terrace Campus Units 3 Contact Up to 6 hours per week Available for Study Abroad and Exchange Y Prerequisites SACE Stage 2 Mathematical Studies or equivalent Incompatible COMP SCI 1008, COMP SCI 1201 Restrictions Available to B Eng (Software Engineering) and other non-Engineering degree students only Assessment Written exam, assignments Course Staff
Course Coordinator: Associate Professor Nickolas Falkner
Mr. Lachlan BirdseyCourse Timetable
The full timetable of all activities for this course can be accessed from .
Students should note that there are no scheduled lecture times for this course. However, lecture-like activities will be carried out in the Workshop activity, where you will be able to work with lecturing and tutoring staff. As noted, there is a body of on-line material that augments these activities and these should be considered as a component of the traditional lecturing slot. -
Learning Outcomes
Course Learning Outcomes
By the end of this course, you should be able to:- confidently design algorithms to solve simple problems,
- be able to implement those algorithms in the Processing programming environment,
- be able to correct, test and debug Processing programs, and
- be able to explain how algorithms and Processing programs work.
最新糖心Vlog Graduate Attributes
This course will provide students with an opportunity to develop the Graduate Attribute(s) specified below:
最新糖心Vlog Graduate Attribute Course Learning Outcome(s) Deep discipline knowledge
- informed and infused by cutting edge research, scaffolded throughout their program of studies
- acquired from personal interaction with research active educators, from year 1
- accredited or validated against national or international standards (for relevant programs)
1 Critical thinking and problem solving
- steeped in research methods and rigor
- based on empirical evidence and the scientific approach to knowledge development
- demonstrated through appropriate and relevant assessment
1,2,3 Teamwork and communication skills
- developed from, with, and via the SGDE
- honed through assessment and practice throughout the program of studies
- encouraged and valued in all aspects of learning
3,4 Career and leadership readiness
- technology savvy
- professional and, where relevant, fully accredited
- forward thinking and well informed
- tested and validated by work based experiences
1,2,3,4 Intercultural and ethical competency
- adept at operating in other cultures
- comfortable with different nationalities and social contexts
- able to determine and contribute to desirable social outcomes
- demonstrated by study abroad or with an understanding of indigenous knowledges
4 Self-awareness and emotional intelligence
- a capacity for self-reflection and a willingness to engage in self-appraisal
- open to objective and constructive feedback from supervisors and peers
- able to negotiate difficult social situations, defuse conflict and engage positively in purposeful debate
3,4 -
Learning Resources
Required Resources
Text book: There is no text book for this course but the following books and links may be useful.
- from the Processing website.
- The
- Processing: A Programming Handbook for Visual Designers, Second Edition Casey Reas and Ben Fry, 2014, The MIT Press.
- (The first edition is also fine)
Large components of this course are available through the EDGE on-line course system, including videos, quizzes and other activities. Students are expected to access this on a regular basis to participate in course activities.
Students are expected to access additional resources on the course Moodle forum.Online Learning
In this course, we use an online discussion forum and learning environment available here:
Large components of this course are available through the EDGE on-line course system, including videos, quizzes and other activities. Students are expected to access this on a regular basis to participate in course activities.
This course makes extensive use of on-line learning and it will be very challenging to fully participate or perform at your best unless you regularly access the materials available in the online form. It is your responsibility to regularly check this forum for notices, and to participate in online activities. -
Learning & Teaching Activities
Learning & Teaching Modes
In this course, you will receive a workshop and a practical session every week.
Workshops are two-hour activities that involve whole class and small group collaborative work and demonstrations. In these sessions, students will work with academic staff through the practical application of concepts discussed in on-line materials to aid understanding. Activities will include mini-lectures, guided discussions, tutorial-style questions and a lot of collaborative activity.
Practical sessions are two-hour activities that involve the evaluation and assessment of student understanding. In practical sessions, students will be asked to complete a series of practical problems, which will then be assessed during the session. Some of these practical sessions will be held under examination conditions.
Computer Science Learning Centre: the learning centre, Level 1, Engineering Maths, provides one on one support for first year Computer Science courses, and a space for first year students to study. If you are having trouble with your courses, please attend the Learning Centre for assistance, or contact your lecturers.Workload
The information below is provided as a guide to assist students in engaging appropriately with the course requirements.
Students are expected to spend 10-12 hours per three unit course. This includes approximately 4 hours of contact time per week, 2 hours of on-line activity, and approximately 6 hours of independent study time.Learning Activities Summary
This course consists of the following key topics:
Topic Description Course Introduction The workshop for this course introduces you to the course requirements and to the laboratory environment that you will be using throughout the course. Topic 1: Intro Introduction to Processing and the on-line environment Topic 2: Introductory programming In this topic you will learn the fundamentals of programming, including key concepts such as variables, constants, data types, iteration, selection, functions, problem solving skills and algorithm development. You will learn how to create and modify images to demonstrate your programming skills Topic 3: Intermediate Programming In this final topic, you will learn more advanced programming concepts, such as the use of more complex data 最新糖心Vlog, testing and software engineering strategies, and gain experience in the design and development of more complex algorithms. We will explore a more complex media manipulation project that you will undertake as a group. -
Assessment
The 最新糖心Vlog's policy on Assessment for Coursework Programs is based on the following four principles:
- Assessment must encourage and reinforce learning.
- Assessment must enable robust and fair judgements about student performance.
- Assessment practices must be fair and equitable to students and give them the opportunity to demonstrate what they have learned.
- Assessment must maintain academic standards.
Assessment Summary
This course is assessed with a combination of examination and continuous assessment work.
Task Weighting Practical Assignments 15% Practical Examinations 10% Group Assignment 20% Written Essay 5% Workshops 10% Final written examination 40%
Students will also be assessed for their contribution and participation in the weekly workshop sessions.Assessment Related Requirements
You are required to achieve at least the minimum standard for the examination for this course, at least 40% of the available marks for the final written examination, as well as a grade of 50% overall to pass the course.
Assessment Detail
Practical Assignments: from Week 2, you are required to attend weekly practical sessions, during which you will be assessed on the satisfactory completion of a series of practical questions. You must prepare answers to these questions before you attend the practical session. The assessment of this work will include design, functional implementation, testing and your ability to explain and analyse your work.
Practical Examinations: two of the weekly Practical Sessions will be devoted to Practical Examinations. During this examination session, you will be required to complete a series of practical questions under examination conditions.
Group Assignment: during the second half of semester you will be required to complete a group programming assignment, involving the creation of your own project. Sample topics will be provided to you, however, you are will be able to select your own topic based on approval by your lecturers. This assignment will be assessed on your design, documentation, testing, functional implementation and presentation.
The assignment will be assessed through a combination of in-workshop assessment and assessment of the final submitted entity.
Workshops: the weekly workshop sessions require you to complete a series of collaborative, group-based activities. During these workshop sessions, you will be assessed on your participation and contribution to your group.
Written Essay: You will be required to write and submit an original essay on one of a set of topics provided by lecturing staff. You will be assessed on both the content and structure of your written work.
Final Examination: your final examination is your main assessment component, combining assessment of practical skills (development of algorithms, code development, testing and analysis, etc) and theoretical skills (understanding of concepts, analysis of concepts, the ability to compare and contrast, etc). Frequent revision of the course content, participation in the course activities, and successful completion of the assessment activities throughout the semester will be a crucial step towards the successful completion of this examination.Submission
Practical work, the practical examinations and workshop participation will be assessed during your scheduled course activities. Your assignment work will be assessed through a combination of tutorial activities and through the final submission of these assignments at the course Moodle forum.
Tutorial work must be submitted prior to the tutorial at the course Moodle forum.
If you are unable to attend a practical session, due to medical or compassionate circumstances, you are able to submit your work at the next available practical session. Your marks for that assignment will be capped at 50%.Course Grading
Grades for your performance in this course will be awarded in accordance with the following scheme:
M10 (Coursework Mark Scheme) Grade Mark Description FNS Fail No Submission F 1-49 Fail P 50-64 Pass C 65-74 Credit D 75-84 Distinction HD 85-100 High Distinction CN Continuing NFE No Formal Examination RP Result Pending Further details of the grades/results can be obtained from Examinations.
Grade Descriptors are available which provide a general guide to the standard of work that is expected at each grade level. More information at Assessment for Coursework Programs.
Final results for this course will be made available through .
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Student Feedback
The 最新糖心Vlog places a high priority on approaches to learning and teaching that enhance the student experience. Feedback is sought from students in a variety of ways including on-going engagement with staff, the use of online discussion boards and the use of Student Experience of Learning and Teaching (SELT) surveys as well as GOS surveys and Program reviews.
SELTs are an important source of information to inform individual teaching practice, decisions about teaching duties, and course and program curriculum design. They enable the 最新糖心Vlog to assess how effectively its learning environments and teaching practices facilitate student engagement and learning outcomes. Under the current SELT Policy (http://www.adelaide.edu.au/policies/101/) course SELTs are mandated and must be conducted at the conclusion of each term/semester/trimester for every course offering. Feedback on issues raised through course SELT surveys is made available to enrolled students through various resources (e.g. MyUni). In addition aggregated course SELT data is available.
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Student Support
- Academic Integrity for Students
- Academic Support with Maths
- Academic Support with writing and study skills
- Careers Services
- Library Services for Students
- LinkedIn Learning
- Student Life Counselling Support - Personal counselling for issues affecting study
- Students with a Disability - Alternative academic arrangements
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Policies & Guidelines
This section contains links to relevant assessment-related policies and guidelines - all university policies.
- Academic Credit Arrangements Policy
- Academic Integrity Policy
- Academic Progress by Coursework Students Policy
- Assessment for Coursework Programs Policy
- Copyright Compliance Policy
- Coursework Academic Programs Policy
- Intellectual Property Policy
- IT Acceptable Use and Security Policy
- Modified Arrangements for Coursework Assessment Policy
- Reasonable Adjustments to Learning, Teaching & Assessment for Students with a Disability Policy
- Student Experience of Learning and Teaching Policy
- Student Grievance Resolution Process
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Fraud Awareness
Students are reminded that in order to maintain the academic integrity of all programs and courses, the university has a zero-tolerance approach to students offering money or significant value goods or services to any staff member who is involved in their teaching or assessment. Students offering lecturers or tutors or professional staff anything more than a small token of appreciation is totally unacceptable, in any circumstances. Staff members are obliged to report all such incidents to their supervisor/manager, who will refer them for action under the university's student鈥檚 disciplinary procedures.
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